Phoenix Contact MC Series Through Hole PCB Header, 20 Contact(s), 3.5 mm Pitch, 1 Row, Shrouded

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₩1,030,663.00

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  • 2026년 2월 27일 부터 배송
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RS 제품 번호:
483-359
제조사 부품 번호:
1713378
제조업체:
Phoenix Contact
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모두 선택

브랜드

Phoenix Contact

Product Type

PCB Header

Series

MC

Pitch

3.5mm

Current

8A

Housing Material

Liquid Crystal Polymer

Number of Contacts

20

Number of Rows

1

Shrouded/Unshrouded

Shrouded

Connector System

COMBICON MC 1.5

Mount Type

Through Hole

Contact Plating

Tin over Nickel

Contact Material

Copper Alloy

Termination Type

Solder Mount

Row Pitch

3.5mm

Minimum Operating Temperature

-40°C

Tail Pin Length

2mm

Contact Gender

Male

Maximum Operating Temperature

100°C

Mating Pin Length

2mm

Standards/Approvals

cULus Recognised, VDE

Voltage

160 V

COO (Country of Origin):
DE
The Phoenix Contact MC 1.5/20-GF-3.5 P20 THR is a versatile PCB header designed for seamless integration into your electronic devices. Engineered to meet the demands of modern connectivity solutions, this component facilitates reliable electrical connections while offering flexibility in device design. With its robust construction and thoughtful features, it ensures optimal performance in a range of applications. Its compact design, coupled with a screw locking mechanism, guarantees superior mechanical stability, making it an ideal choice for both hobbyists and professionals in the field. This PCB header not only adheres to stringent quality standards but also enhances the overall durability of your devices, making it a trusted choice for manufacturers seeking reliability and innovation in their projects.

Designed for ease of integration into SMT soldering processes

Screwing mechanism provides enhanced mechanical stability

Compatible with a variety of connection technologies

Offers maximum flexibility in device layout

Features a linear pinning layout for streamlined connections

Crafted to meet RoHS and WEEE compliance standards

Constructed from high-quality materials, ensuring longevity

Optimised for thermal and electrical properties, supporting efficient performance

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